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The triggering, curving and stopping of excitable waves during cell migration

机译:细胞迁移过程中激发波的触发,弯曲和停止

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Recent advances in the understanding of cell migration in amoeboid cells have demonstrated the existence of excitable dynamics in the regulation of the extension and retraction of pseudopodia. In particular, traveling waves of biochemical signaling and actin polymerization have been observed in a number of different cell types. These waves appear to be triggered at a point on the cell cortex and propagate along the perimeter of the cell, pushing the membrane outward to create pseudopods. These waves, however, do not always spread throughout the entire cell cortex. More often than not, they stop after traveling a certain distance along the membrane. In this paper, we look at the factors that create the traveling front, and influence the stopping of the wave. We show that the speed of the wave is controlled by the initial set point of the excitable system, as well as the existence of a critical point for each system, that governs the stopping of the wave.
机译:在对变形虫细胞中细胞迁移的理解上的最新进展表明,在伪足的延伸和收缩调节中存在兴奋性动力学。特别是,已经在许多不同的细胞类型中观察到了生化信号传导和肌动蛋白聚合的行波。这些波似乎是在细胞皮层的某个点触发的,并沿着细胞的周界传播,将膜向外推以产生假足。但是,这些波并不总是散布在整个细胞皮质中。通常,它们在沿膜行进一定距离后会停止。在本文中,我们着眼于创建行进前沿并影响波停止的因素。我们表明,波速受可激励系统的初始设定点以及每个系统的临界点的存在控制,该临界点控制着波的停止。

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